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Methodology for generation of heliostat field layout in central receiver systems based on yearly normalized energy surfaces

机译:基于年度标准化能量面的中央接收器系统中定日镜场布局生成方法

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The heliostat field layout is an essential task for any solar tower plant optimization process. Radially staggered and other distributions are usually optimised by computer codes using different approaches. In most of those cases, due to the CPU time required, the heliostat field layout is optimised by several mathematical models and simplifications. With today's computers, it is possible to calculate the yearly energy available at any point in a site for a given tower height, the yearly normalized energy surface (YNES). Yearly efficiency maps can be generated based on the cosine factor, the spillage factor and the atmospheric attenuation coefficient of the site using real Direct Normal Irradiance (DNI) data, within a reasonable computing time. It is therefore easy to find the place where the yearly energy available is the highest for location of the first heliostat. It is also possible to calculate the effect of shadowing and blocking by this heliostat on the YNES, so YNES can be re-calculated and the best position for the next heliostat can be found. Although this iterative method is time-consuming, it is worthwhile if either the efficiency of the solar plant can be increased or the capital cost reduced. This YNES-based layout generation method enables better flexibility than pre-determined gridding strategies such as used in DELSOL. The paper includes a description of the optimization procedure.
机译:定日镜场的布局是任何太阳能塔设备优化过程的基本任务。径向交错和其他分布通常使用不同的方法通过计算机代码进行优化。在大多数情况下,由于所需的CPU时间,定日镜场布局通过几种数学模型和简化方式进行了优化。使用当今的计算机,可以计算出给定塔高的站点任意点上的年度可用能量,即年度标准化能量表面(YNES)。可以在合理的计算时间内,使用实际的直接法向辐照度(DNI)数据,基于余弦因数,溢出因数和站点的大气衰减系数来生成年度效率图。因此,很容易找到第一个定日镜定位的年度可用能量最高的地方。也可以计算此定日镜对YNES的遮蔽和遮挡的影响,因此可以重新计算YNES并找到下一个定日镜的最佳位置。尽管此迭代方法很耗时,但如果可以提高太阳能发电厂的效率或降低资本成本,则是值得的。这种基于YNES的布局生成方法比诸如DELSOL中使用的预定网格策略具有更好的灵活性。本文包括对优化过程的描述。

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